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Open-source immersogeometric analysis of fluid-structure interaction using FEniCS and tIGAr

机译:使用泳芯和尖端的流体结构相互作用的开源沉默分析

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We recently developed the open-source library tIGAr, which extends the FEniCS finite element automation framework to isogeometric analysis. The present contribution demonstrates the utility of tIGAr in complex problems by applying it to immersogeometric fluid-structure interaction (FSI) analysis. This application is implemented as the new open-source library CouDALFISh (Coupling, via Dynamic Augmented Lagrangian, of Fluids with Immersed Shells, pronounced "cuttlefish"), which uses the dynamic augmented Lagrangian (DAL) method to couple fluid and shell structure subproblems. The DAL method was introduced previously, over a series of papers largely focused on heart valve FSI, but an open-source implementation making extensive use of automation to compile numerical routines from high-level mathematical descriptions brings newfound transparency and reproducibility to these earlier developments on immersogeometric FSI analysis. The portions of CouDALFISh that do not use code generation also illustrate how a framework like FEniCS remains useful even when some functionality is outside the scope of its standard workflow. This paper summarizes the workings of CouDALFISh and documents a variety of benchmarks demonstrating its accuracy. Although the implementation emphasizes transparency and extensibility over performance, it is nonetheless demonstrated to be sufficient to simulate 3D FSI of an idealized aortic heart valve. Source code will be maintained at https://github.com/david-kamensky/CouDALFISh. (C) 2020 Elsevier Ltd. All rights reserved.
机译:我们最近开发了开源库Tigar,它将芬尼斯有限元自动化框架扩展到异诊分析。目前的贡献通过将其应用于沉浸量度的流体 - 结构相互作用(FSI)分析来证明Tigar在复杂问题中的效用。该应用程序实施为新的开源库Coudalfish(通过动态增强拉格朗日,流体的耦合,具有浸入的壳,发音为“墨鱼”),它使用动态增强拉格朗日(DAL)方法来耦合流体和壳结构子问题。先前介绍了DAL方法,在一系列主要集中在心脏瓣膜FSI上,而是一种开源实现,可以广泛利用自动化从高级数学描述中汇编数程程序带来了对这些早期发展的新发现透明度和再现性沉默啮齿机术FSI分析。不使用代码生成的Coudalfish的部分也说明了即使某些功能超出其标准工作流的范围时,如何将像芬太科奇的框架一样有用。本文总结了Coudalfish和文件的工作各种基准,证明了其准确性。虽然实施强调了透明度和对性能的可扩展性,但仍然证明是足以模拟理想化主动脉心脏瓣膜的3D FSI。源代码将在https://github.com/david-kamensky/coudalfish维护。 (c)2020 elestvier有限公司保留所有权利。

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